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Naike Produced Ceramic Saddle Ring

Naike Produced Ceramic Saddle Ring Ceramic saddle ring belongs to a type of ceramic filler. Ceramic saddle ring is processed by continuous extrusion. Compared with the Rasey ring filler of the same material, ceramic saddle ring has the advantages of high flux, low pressure and high efficiency. has large voidage. The shape of ceramic saddle ring is between ring and saddle, so it has the advantages of both. This structure is beneficial to the distribution of liquid and increase the number of gas channels. Because of its high density and excellent acid and heat resistance, ceramic saddle ring is resistant to a…

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Molecular Sieves 13X HP:Remove The Nitrogen From Oxygen To Obtain Pure Oxygen

Molecular Sieves 13X HP:Remove The Nitrogen From Oxygen To Obtain Pure Oxygen What are molecular sieves 13X-HP? Molecular sieves 13X-HP is a novel X molecular sieve suitable for the PSA oxygen concentrator. They are commonly used as catalysts to remove nitrogen from oxygen to obtain pure oxygen. Higher N2 adsorption capacity and better results during N2 / O2 separation. Produced by , it is also used as a desiccant to absorb moisture, moisture, and moisture from liquids, oil, and gas. This molecular sieve has four distinct advantages: highest adsorption performance,microporosity10A, and speedy transfer rates. Long-acting adsorption. Why use molecular sieves…

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What Is The Difference Between 3A, 4A, 5A, And 13X Molecular Sieves?

What Is The Difference Between 3A, 4A, 5A, And 13X Molecular Sieves? What is a molecular sieve A molecular sieve is a type of mineral adsorbent, filter agent and drying agent that can absorb certain molecules, which also called a mole sieve. It is a synthetic crystalline aluminosilicates(zeolite), which can withstand high temperatures and has great thermal stability, thus it can be regenerated conveniently and be reused repeatedly. The internal structure has many cavities that interconnected by pores which measured in angstroms, and are a uniform size similar in size to small molecules. That means larger molecules cannot enter through the material or be absorbed but the smaller ones can. Molecular…

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Introduction of Inert Ceramic Balls

Introduction of Inert Ceramic Balls Inert ceramic balls are generally used as support and covering materials for the catalyst in the reactor. It can buffer the impact of the liquid and gas entering the reactor on the catalyst, protect the catalyst, and improve the distribution of liquid and gas in the reactor. It has the characteristics of high temperature and high pressure resistance, low water absorption, stable chemical properties, and can withstand the corrosion of organic solvents such as acids and alkalis, as well as temperature changes during the production process. Due to its wide use, inert ceramic balls have…

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Why Is Lithium Molecular Sieve A Preferred Choice For Oxygen Generation?

Why Is Lithium Molecular Sieve A Preferred Choice For Oxygen Generation? What is a lithium molecular sieve? Lithium molecular sieve (oxygen molecular sieve) is a kind of lithium X type silicon aluminicate crystal, with a relatively stable silicon aluminum skeleton structure. The molecule sieve has the characteristics of large nitrogen adsorption capacity, high nitrogen, and oxygen separation coefficient, and fast dynamic adsorption and desorption speed. Lithium molecular sieve can be used in steel, non-ferrous metallurgy, chemical, environmental protection, paper, aquaculture, healthcare, and other industries, and high-efficiency oxygen molecular sieve for high-end small medical (home) oxygen machines. Differences between a lithium…

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What is the Difference Between Zeolite and Molecular Sieve?

What is the Difference Between Zeolite and Molecular Sieve? Ⅰ. What are zeolite and molecular sieve? Zeolite is an aluminosilicate mineral with a water framework structure and was first discovered in 1756. The Swedish mineralogist Cronstedt discovered that there is a type of natural aluminosilicate ore that boils when burned, and named it zeolite. The concept of molecular sieve was proposed by McBain in 1932, which means a porous material that can sieve substances at the molecular level. In other words, zeolite is a definition based on the physical and chemical properties of a substance, and molecular sieve is a…

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Top Ten Questions and Answers on Molecular Sieve Activated Powder

Top Ten Questions and Answers on Molecular Sieve Activated Powder 1. What are the raw materials and production process of molecular sieve activation powder? Answer: The main raw material of activated molecular sieve powder is aluminosilicate. 3A is potassium sodium aluminosilicate, 4A is sodium aluminosilicate, and 5A is sodium calcium aluminosilicate. The main production method is to make activated molecular sieve powder after the raw powder is activated at high temperature. 2. The main function of activated molecular sieve powder (what is the difference with defoamer)? Answer: The activated molecular sieve powder absorbs excess water in the system, and the…

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Molecular Sieve Production Process

Molecular Sieve Production Process The molecular sieve powder production process mainly includes five stages of sodium aluminate preparation, synthesis, aging and crystallization, mother liquor separation and washing, drying and packaging. 1. Preparation stage of molecular sieve powder A certain amount of liquid caustic soda or steaming mother is added to the reaction kettle, heated to the preparation temperature under stirring, and then the aluminum hydroxide temperature is added at a certain temperature. The aluminum hydroxide solution was prepared under the conditions of the preparation of sodium aluminate. After the preparation is completed, a certain amount of mother liquor is added…

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What is the Difference Between Molecular Sieve and Desiccant?

What is the Difference Between Molecular Sieve and Desiccant? Ⅰ. What is the molecular sieve desiccant? Some people may think that the two are the same thing. This is because there is a substance that we call the molecular sieve desiccant. It is a synthetic desiccant and has a strong adsorption effect on water molecules. The pore size of the molecular sieve is controlled by different processing techniques. In addition to absorbing water vapor, it can also absorb other gases. Under high temperature conditions above 230°C, water molecules can still be maintained well. But molecular sieve and desiccant are two…

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The Difference Between 3A Molecular Sieve and Type B Desiccant for Insulating Glass

The Difference Between 3A Molecular Sieve and Type B Desiccant for Insulating Glass 1. What is the 3A molecular sieve for insulating glass? Molecular sieve (also known as synthetic zeolite) is a kind of aluminosilicate microporous mesh crystal material, composed of SiO2 and Al2O3 tetrahedrons, with uniform pore size and large specific surface area. There are metal cations (such as Na+, K+, Ca2+, etc.) in the molecular sieve lattice to balance the excess negative charges in the tetrahedron. Different types of molecular sieves have different pore sizes or shapes and can be used to separate a variety of different molecules.…

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What is the Role of Molecular Sieve in the Oxygen Generator?

What is the Role of Molecular Sieve in the Oxygen Generator? Medical oxygen generators are based on pressure swing adsorption technology, a new type of equipment that extracts oxygen from the air. What is the role of molecular sieve oxygen generators? 1. Oxygen production process of molecular sieve It uses molecular sieve physical adsorption and desorption technology to fill the oxygen generator with molecular sieves, which can absorb nitrogen in the air when pressurized, and the remaining unabsorbed oxygen is collected, and after purification treatment, it becomes high-purity oxygen. The specific working process of molecular sieve is that compressed air…

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Activation Method of 4A Molecular Sieve

Activation Method of 4A Molecular Sieve 4A molecular sieve has a wide range of applications. It is not only a new type of high-performance microporous adsorbent, but also a catalyst carrier with excellent performance. As a desiccant, molecular sieve has strong drying efficiency and can be used to dry a variety of gases and liquids. Molecular sieves cannot be used to dry unsaturated compounds because they have a strong adsorption effect on unsaturated molecules, polar molecules and easily polarized molecules. Molecular sieve has a small water absorption capacity. If the material to be dried contains too much water, it should…

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